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直流电前庭刺激调节人体上半身的自主运动。

Galvanic vestibular stimulation modulates voluntary movement of the human upper body.

作者信息

Cauquil A S, Day B L

机构信息

MRC Human Movement and Balance Unit, Institute of Neurology, Queen Square, London WC1N 3BG, UK.

出版信息

J Physiol. 1998 Dec 1;513 ( Pt 2)(Pt 2):611-9. doi: 10.1111/j.1469-7793.1998.611bb.x.

Abstract
  1. We have investigated whether vestibular information plays a role in the control of voluntary movement of the upper body. Movement consisted of a lateral tilt of the upper body in the frontal plane through an angle of about 8 deg. The influence of vestibular input was assessed from the effect of long duration (3-6 s), low-intensity (0.7 mA) galvanic vestibular stimulation (GVS) applied at different times relative to the movement. 2. GVS always produced a tilt of the body in the frontal plane but the response was larger and more prolonged when the onset of stimulation coincided with the cue to start moving compared with when it was applied some seconds after movement onset (i.e. while the subject was stationary in a tilted posture). 3. When the stimulus began 2 s before the voluntary movement the response consisted of two distinct components separated in time, one that was linked to the onset of GVS and another that was linked to onset of the voluntary movement. The large response observed when GVS onset coincided with the movement cue resembled the sum (after realignment in time) of these two separate components. 4. We suggest that these two components of the response to GVS relate to two different uses of vestibular information for whole-body control: first, to help maintain balance of the body, and second, to help guide and improve the accuracy of voluntary movements involving motion of the head in space.
摘要
  1. 我们研究了前庭信息是否在上半身自主运动的控制中发挥作用。运动包括上半身在额状面内横向倾斜约8度。通过在相对于运动的不同时间施加持续时间长(3 - 6秒)、低强度(0.7毫安)的直流电前庭刺激(GVS)的效果来评估前庭输入的影响。2. GVS总是会使身体在额状面内倾斜,但与在运动开始后几秒施加刺激(即当受试者以倾斜姿势静止时)相比,当刺激开始与开始运动的提示同时出现时,反应更大且更持久。3. 当刺激在自主运动前2秒开始时,反应由两个在时间上分开的不同成分组成,一个与GVS的开始有关,另一个与自主运动的开始有关。当GVS开始与运动提示同时出现时观察到的大反应类似于这两个独立成分在时间重新对齐后的总和。4. 我们认为,对GVS反应的这两个成分与前庭信息在全身控制中的两种不同用途有关:第一,帮助维持身体平衡;第二,帮助引导和提高涉及头部在空间中运动的自主运动的准确性。

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